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Using quasi-linear diffusion to model acceleration and loss from wave-particle interactions

机译:使用准线性扩散对波粒相互作用的加速和损失建模

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Current research has reemphasized the importance of cyclotron resonant wave particle interactions for radiation belt electrons. Whistler mode hiss, chorus, and EMIC waves can act in combination to cause acceleration and loss of radiation belt electrons at greater rates than previously appreciated. These processes can be described by quasi-linear theory, but calculating quasi-linear diffusion coefficients is computationally demanding. Recent advances have been made in computing bounce averaged quasi-linear pitch angle, energy, and mixed diffusion coefficients for hiss and EMIC in the high density plasmasphere; this paper outlines generalization of these techniques for chorus waves, prevalent in the low density region outside the plasmasphere. These coefficients are associated with a two-dimensional diffusion equation whose numerical solution by finite differencing methods requires care, for reasons having to do with the relation between the mixed and other diffusion coefficients, as discussed.
机译:当前的研究再次强调了回旋共振波粒子相互作用对辐射带电子的重要性。惠斯勒模式的嘶嘶声,合唱声和EMIC波可以共同作用,从而导致辐射带电子的加速和丢失,其速率超过了以前的认识。这些过程可以用准线性理论来描述,但是计算准线性扩散系数在计算上是需要的。在计算高密度等离子体层中的嘶嘶声和EMIC的弹跳平均准线性俯仰角,能量和混合扩散系数方面取得了最新进展。本文概述了这些技术的普遍应用,这些技术普遍存在于等离子层以外的低密度区域。这些系数与二维扩散方程式相关,如所讨论的那样,由于与混合扩散系数和其他扩散系数之间的关系有关的原因,通过有限微分方法进行数值求解的二维扩散方程式需要引起注意。

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